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Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques

Human immunodeficiency virus (HIV) eradication or long-term suppression in the absence of antiretroviral therapy (ART) requires an understanding of all viral reservoirs that could contribute to viral rebound after ART interruption. CD4 T cells (CD4s) are recognized as the predominant reservoir in HI...

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Autores principales: Abreu, Celina M., Veenhuis, Rebecca T., Avalos, Claudia R., Graham, Shelby, Parrilla, Daymond R., Ferreira, Edna A., Queen, Suzanne E., Shirk, Erin N., Bullock, Brandon T., Li, Ming, Metcalf Pate, Kelly A., Beck, Sarah E., Mangus, Lisa M., Mankowski, Joseph L., Mac Gabhann, Feilim, O’Connor, Shelby L., Gama, Lucio, Clements, Janice E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6703426/
https://www.ncbi.nlm.nih.gov/pubmed/31431552
http://dx.doi.org/10.1128/mBio.01659-19
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author Abreu, Celina M.
Veenhuis, Rebecca T.
Avalos, Claudia R.
Graham, Shelby
Parrilla, Daymond R.
Ferreira, Edna A.
Queen, Suzanne E.
Shirk, Erin N.
Bullock, Brandon T.
Li, Ming
Metcalf Pate, Kelly A.
Beck, Sarah E.
Mangus, Lisa M.
Mankowski, Joseph L.
Mac Gabhann, Feilim
O’Connor, Shelby L.
Gama, Lucio
Clements, Janice E.
author_facet Abreu, Celina M.
Veenhuis, Rebecca T.
Avalos, Claudia R.
Graham, Shelby
Parrilla, Daymond R.
Ferreira, Edna A.
Queen, Suzanne E.
Shirk, Erin N.
Bullock, Brandon T.
Li, Ming
Metcalf Pate, Kelly A.
Beck, Sarah E.
Mangus, Lisa M.
Mankowski, Joseph L.
Mac Gabhann, Feilim
O’Connor, Shelby L.
Gama, Lucio
Clements, Janice E.
author_sort Abreu, Celina M.
collection PubMed
description Human immunodeficiency virus (HIV) eradication or long-term suppression in the absence of antiretroviral therapy (ART) requires an understanding of all viral reservoirs that could contribute to viral rebound after ART interruption. CD4 T cells (CD4s) are recognized as the predominant reservoir in HIV type 1 (HIV-1)-infected individuals. However, macrophages are also infected by HIV-1 and simian immunodeficiency virus (SIV) during acute infection and may persist throughout ART, contributing to the size of the latent reservoir. We sought to determine whether tissue macrophages contribute to the SIVmac251 reservoir in suppressed macaques. Using cell-specific quantitative viral outgrowth assays (CD4-QVOA and MΦ-QVOA), we measured functional latent reservoirs in CD4s and macrophages in ART-suppressed SIVmac251-infected macaques. Spleen, lung, and brain in all suppressed animals contained latently infected macrophages, undetectable or low-level SIV RNA, and detectable SIV DNA. Silent viral genomes with potential for reactivation and viral spread were also identified in blood monocytes, although these cells might not be considered reservoirs due to their short life span. Additionally, virus produced in the MΦ-QVOA was capable of infecting healthy activated CD4s. Our results strongly suggest that functional latent reservoirs in CD4s and macrophages can contribute to viral rebound and reestablishment of productive infection after ART interruption. These findings should be considered in the design and implementation of future HIV cure strategies.
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spelling pubmed-67034262019-08-29 Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques Abreu, Celina M. Veenhuis, Rebecca T. Avalos, Claudia R. Graham, Shelby Parrilla, Daymond R. Ferreira, Edna A. Queen, Suzanne E. Shirk, Erin N. Bullock, Brandon T. Li, Ming Metcalf Pate, Kelly A. Beck, Sarah E. Mangus, Lisa M. Mankowski, Joseph L. Mac Gabhann, Feilim O’Connor, Shelby L. Gama, Lucio Clements, Janice E. mBio Research Article Human immunodeficiency virus (HIV) eradication or long-term suppression in the absence of antiretroviral therapy (ART) requires an understanding of all viral reservoirs that could contribute to viral rebound after ART interruption. CD4 T cells (CD4s) are recognized as the predominant reservoir in HIV type 1 (HIV-1)-infected individuals. However, macrophages are also infected by HIV-1 and simian immunodeficiency virus (SIV) during acute infection and may persist throughout ART, contributing to the size of the latent reservoir. We sought to determine whether tissue macrophages contribute to the SIVmac251 reservoir in suppressed macaques. Using cell-specific quantitative viral outgrowth assays (CD4-QVOA and MΦ-QVOA), we measured functional latent reservoirs in CD4s and macrophages in ART-suppressed SIVmac251-infected macaques. Spleen, lung, and brain in all suppressed animals contained latently infected macrophages, undetectable or low-level SIV RNA, and detectable SIV DNA. Silent viral genomes with potential for reactivation and viral spread were also identified in blood monocytes, although these cells might not be considered reservoirs due to their short life span. Additionally, virus produced in the MΦ-QVOA was capable of infecting healthy activated CD4s. Our results strongly suggest that functional latent reservoirs in CD4s and macrophages can contribute to viral rebound and reestablishment of productive infection after ART interruption. These findings should be considered in the design and implementation of future HIV cure strategies. American Society for Microbiology 2019-08-20 /pmc/articles/PMC6703426/ /pubmed/31431552 http://dx.doi.org/10.1128/mBio.01659-19 Text en Copyright © 2019 Abreu et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Abreu, Celina M.
Veenhuis, Rebecca T.
Avalos, Claudia R.
Graham, Shelby
Parrilla, Daymond R.
Ferreira, Edna A.
Queen, Suzanne E.
Shirk, Erin N.
Bullock, Brandon T.
Li, Ming
Metcalf Pate, Kelly A.
Beck, Sarah E.
Mangus, Lisa M.
Mankowski, Joseph L.
Mac Gabhann, Feilim
O’Connor, Shelby L.
Gama, Lucio
Clements, Janice E.
Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques
title Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques
title_full Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques
title_fullStr Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques
title_full_unstemmed Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques
title_short Myeloid and CD4 T Cells Comprise the Latent Reservoir in Antiretroviral Therapy-Suppressed SIVmac251-Infected Macaques
title_sort myeloid and cd4 t cells comprise the latent reservoir in antiretroviral therapy-suppressed sivmac251-infected macaques
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6703426/
https://www.ncbi.nlm.nih.gov/pubmed/31431552
http://dx.doi.org/10.1128/mBio.01659-19
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